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Tissue expansion techniques in reconstructive surgery: a 10-year bibliometric analysis.

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|April 3, 2023
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Summary

This bibliometric analysis reveals tissue expansion (TE) research trends. Acellular dermal matrix (ADM) in breast reconstruction is a current focus, while patient-activated controlled expansion shows future promise.

Keywords:
Bibliometric analysisbreast reconstructiondefect reconstructiontissue expansion (TE)

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Area of Science:

  • Plastic Surgery
  • Biomaterials
  • Medical Devices

Background:

  • Tissue expansion (TE) is a significant area of research with increasing attention over the last decade.
  • No previous bibliometric analyses have comprehensively reviewed the field of TE.
  • This study addresses the need for a quantitative and visual analysis of TE literature.

Purpose of the Study:

  • To conduct a bibliometric analysis of tissue expansion (TE) research.
  • To identify research hotspots and emerging frontiers in the field of TE.
  • To provide a comprehensive overview of TE literature from 2012-2021.

Main Methods:

  • Literature search conducted on the Web of Science Core Citation (WOSCC) database.
  • Data extracted from 1,085 documents published between 2012 and 2021.
  • Bibliometric analysis and visualization performed using CiteSpace and VOSviewer software.

Main Results:

  • The United States was the leading country in TE research, with Harvard University as the most productive institution.
  • Plastic and Reconstructive Surgery published the most documents, and Kim JYS was the most prolific and cited author.
  • Key terms included "complications", "breast reconstruction", "outcomes", "tissue expander", "mastectomy", and "acellular dermal matrix" (ADM). Keywords with strong citation bursts included "surgical site infection" and "activated controlled expansion".

Conclusions:

  • This study offers a complete analysis of TE research trends.
  • The impact of ADM on complication rates in breast reconstruction is identified as a current research hotspot.
  • Patient-activated controlled expansion is highlighted as a potential future research direction in TE.